[0001] The present invention relates to a process for producing a multilayer molded article
in which a surface of a thermoplastic resin substrate is entirely or partly laminated
with a skin material.
[0002] Multilayer molded articles in which a skin material is laminated on a surface of
a thermoplastic resin substrate have been used in a wide variety of fields such as
interior parts of automobiles (for example, door trims and instrument panels), and
interior and exterior parts of household electric appliances.
[0003] As methods for producing such multilayer molded articles, there have been known a
method in which a molded article (substrate) obtained by previously forming a thermoplastic
resin into a desired shape by a variety of methods such as injection molding is laminated
and stuck with a skin material using adhesives or the like, a method using an injection
press method, as disclosed in Japanese Patent Publication Kokoku No. 83058/1993 (JP-B-05-83058),
in which a skin material is supplied between a pair of a female and a male mold halves,
a molten thermoplastic resin is thereafter supplied, and the skin material is then
laminated on the surface of the molten thermoplastic resin in parallel with forming
the molten thermoplastic resin into a desired shape by means of clamping the mold
halves, and so on.
[0004] However, the former method includes complex steps and has problems on human bodies
and environment caused by solvents contained in the adhesives. The latter method has
an advantage that forming a substrate and laminating a skin material onto the substrate
can be carried out simultaneously, but there is a problem that texture of the skin
material in the molded article obtained is deteriorated because a molding pressure
is applied to the skin material under the same condition as that of the resin portion.
Particularly, in a case where a fabric skin material with raising is used as the skin
material, the raising falls down due to the pressure in mold clamping and the appearance
is seriously deteriorated. In a case where a skin material backed with a foamed layer
is used, there is a problem that the foamed layer is crushed by the heat and the molding
pressure in the mold clamping, so that a cushion property is deteriorated.
[0005] Under these circumstances, the present inventors have studied to develop a process
for producing a multilayer molded article wherein the advantage of the injection press
molding method that a surface of a substrate can be laminated entirely or partly with
a skin material in parallel with forming the substrate is utilized, and even in a
case where a fabric skin material with raising or a skin material backed with a foamed
layer is used, deterioration in an appearance and in a cushion property caused by
falling down of the raising and crush of the foamed layer never occurs. As a result,
they have accomplished the present invention.
[0006] The present invention provides:
1. a process for producing a multilayer molded article in which a surface of a thermoplastic
resin substrate is partly or entirely laminated with a skin material, the process
using a mold including a pair of a female and a male mold halves, the process comprising:
(1) a step of supplying the skin material to a predetermined position between the
female and the male mold halves in an open state;
(2) a step of supplying a molten thermoplastic resin between the skin material and
a molding surface of any one of the female and the male mold halves;
(3) a step of clamping the mold after or while supplying the molten thermoplastic
resin;
(4) a step of carrying out primary cooling of the molten thermoplastic resin in the
mold;
(5) a step of moving a part or a whole of the mold half, wherein the part or the whole
of the mold half has a molding surface contacting the skin material, relative to a
surface of the skin material to make a gap between the surface of the skin material
and the part or the whole of a molding surface of the mold half;
(6) a step of carrying out secondary cooling of the molten thermoplastic resin in
the state of keeping the position of the mold halves made in the above (5); and
(7) a step of opening the mold halves after solidification of the molten thermoplastic
resin and taking the molded article out of the mold.
2. a process for producing a multilayer molded article in which a surface of a thermoplastic
resin substrate is entirely laminated with a skin material, the process using a mold
including a pair of a female and a male mold halves, the process comprising:
(1) a step of supplying the skin material to a predetermined position between the
female and the male mold halves in an open state;
(2) a step of supplying a molten thermoplastic resin between the skin material and
a molding surface of any one of the female and the male mold halves;
(3) a step of clamping the mold after or while supplying the molten thermoplastic
resin;
(4) a step of carrying out primary cooling of the molten thermoplastic resin in the
mold;
(5) a step of opeing the mold halves to make a gap between the surface of the skin
material and the whole of a molding surface of the mold half;
(6) a step of carrying out secondary cooling of the molten thermoplastic resin in
the state of keeping the position of the mold halves made in the above (5); and
(7) a step of opening the mold halves after solidification of the molten thermoplastic
resin and taking the molded article out of the mold.
3. a process for producing a multilayer molded article in which a surface of a thermoplastic
resin substrate is partly laminated with a skin material, the process using a mold
including a pair of a female and a male mold halves, a part of a molding surface corresponding
to a skin material-laminated surface of the molded article which comes in contact
with the skin material being composed of a movable block which can slide forward and
backward in a mold opening/closing direction in the mold, the process comprising:
(1) a step of supplying the skin material to a predetermined position between the
female and the male mold halves in an open state;
(2) a step of supplying a molten thermoplastic resin between the skin material and
a molding surface of the mold half having no movable block;
(3) a step of clamping the mold after or while supplying the molten thermoplastic
resin;
(4) a step of carrying out primary cooling of the molten thermoplastic resin in the
mold;
(5) a step of retracting the movable block contacting the skin material into the mold
half to make a gap between a surface of the skin material and a molding surface of
the movable block;
(6) a step of carrying out secondary cooling of the molten thermoplastic resin in
the state of keeping the position of the mold halves made in the above (5); and
(7) a step of opening the mold halves after solidification of the molten thermoplastic
resin and taking the molded article out of the mold.
4. the process according to the above 1, 2 or 3 wherein the gap made in the step (5)
is a half or more of the difference in thickness between the unprocessed skin material
before molding and the skin material being under compression by means of the mold
clamping in the step (3); and
5. the process according to the above 1, 2 or 3 wherein the skin material is a fabric
skin material with raising.
[0007] Throughout this specification and the claims which follow, unless the context requires
otherwise, the word "comprise", and variations such as "comprises" and "comprising",
will be understood to imply the inclusion of a stated integer or step or group of
integers or steps but not the exclusion of any other integer or step or group of integer
or step.
[0008] Further scope of applicability of the present invention will become apparent from
the detailed description given hereinafter. However, it should be understood that
the detailed description and specific examples, while indicating preferred embodiments
of the invention, are given by way of illustration only, since various changes and
modifications within the spirit and scope of the invention will become apparent to
those skilled in the art from this detailed description.
Figure 1 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 2 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 3 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 4 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 5 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 6 illustrates an example of a multilayer molded article obtained by the process
of the present invention by a cross section.
Figure 7 illustrates an example of a multilayer molded article with a rib obtained
by the process of the present invention by a cross section.
Figure 8 illustrates an example of a mold to be used in the present invention by a
schematic cross section.
Figure 9 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 10 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 11 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 12 illustrates a manufacturing process according to the process of the present
invention by a schematic cross section of a mold.
Figure 13 illustrates an example of a multilayer molded article obtained by the process
of the present invention by a cross section.
Figure 14 illustrates an example of a multilayer molded article obtained by the process
of the present invention by a cross section.
Figure 15 illustrates an example of a multilayer molded article with a rib obtained
by the process of the present invention by a cross section.
[0009] With reference to drawings, the present invention is illustrated below.
[0010] It is needless to say that the embodiment given below is examples of the present
invention and should not to be construed to limit the present invention thereto.
EXAMPLES
Example 1
[0011] The mold to be used in the present invention may be those which is usually employed
for the injection-press molding and the like, and is composed of a pair of a male
mold half (1) which has a cavity which is to become a shape of a desired product at
a time of clamping the mold and a female mold half (2), any one of the mold halves
being connected with a press machine and capable of moving upward and downward or
from side to side, and the female and the male mold halves being able to open and
close.
[0012] The following description is concentrated on the examples wherein an upright mold
apparatus opens and closes vertically.
[0013] In the process of the present invention, first the mold halves are opened to an open
state and a skin material (6) is supplied to a predetermined position therebetween.
[Step (1)] (Figure 1)
[0014] The skin material may be, in the instance of using such an upright mold apparatus
which opens and closes in the vertical direction and if possible, either placed so
as to cover a molding surface of the lower mold half, which corresponds to the male
mold in Figure 1, or fixed by using a skin material-fixing frame or the like mounted
between the female and the male mold halves, or fixed onto a parting surface of the
female mold half or the like by any appropriate means such as pins. Any method may
be chosen for supplying and fixing the skin material.
[0015] After supplying the skin material between the female and the male mold halves, a
molten thermoplastic resin (7) is supplied between the skin material and a molding
surface of one of the female and the male mold halves. [Step (2)] (Figure 2)
[0016] The molten thermoplastic resin is supplied between the skin material and the molding
surface which is to become the substrate side (in the Figure, the molding surface
of the male mold half).
[0017] The molten thermoplastic resin (7) may be supplied by an exterior supplying means
provided outside the mold, from which the molten thermoplastic resin is supplied onto
the molding surface, but a method wherein the molten thermoplastic resin is supplied
via a molten resin path (5) provided in the mold half which is to construct the molding
surface of the substrate side (in the Figure, the male mold half) is preferred.
[0018] In the latter case, one terminal of the molten resin path (5) is connected with a
resin-supplying opening (11) which opens to a molding surface and the other terminal
is connected with a plasticizing apparatus (not shown) provided outside the mold.
[0019] The numbers of the molten resin path (5) and the resin-supplying opening (11) may
be either one, or two or more depending upon a shape and a size of the product, and
the arrangement thereof are also appropriately determined.
[0020] A cavity clearance defined between the female and the male mold halves is appropriately
concretely determined in consideration of a type and a thickness of the skin material
to be used.
[0021] The mold clamping is then carried out by closing the female and the male mold halves.
[Step (3)] (Figure 3)
[0022] Such mold clamping may be either commenced after completion of supplying the molten
thermoplastic resin or carried out in parallel with the aforementioned step (2), namely,
carried out while supplying the molten thermoplastic resin.
[0023] In a case where the mold clamping is carried out after the completion of supplying
the molten thermoplastic resin, it is preferred that the mold clamping is commenced
immediately after the completion of supplying the molten thermoplastic resin.
[0024] By the mold clamping, the skin material (6) is laminated on the molten thermoplastic
resin layer at the instant that it has come in contact with the molding surface of
the female mold half (1).
[0025] After the mold clamping, the primary cooling is carried out while retaining the mold
clamping state [Step (4)], and immediately after that, a part or a whole of the mold
half, wherein the part or the whole of the mold half has a molding surface contacting
the skin material, is moved relative to the surface of the skin material to make a
gap, A, between the surface of the skin material and the molding surface of the part
or the whole of a molding surface of the mold half, said gap causing the skin material
being under compression by means of the mold clamping in the step (3) to be recovered.
[0026] More specifically, for example, in a case where the moving element is the whole of
the mold half as described above, the female and the male mold halves are slightly
opened to make the gap, A, between the surface of the skin material and the whole
of the molding surface of the mold half. [Step (5)1 (Figure 4) The secondary cooling
is thereafter carried out in this state i.e. in the state of keeping the position
of the mold halves made in the above Step (5). [Step (6)].
[0027] Alternatively, in a case where the moving element is the part of the mold as described
above, a part of a mold half, the part of the mold half such as a movable block contacting
the skin material is retracted into the mold half to make a gap, A, between the surface
of the skin material and the part of the molding surface of the mold half (Step (5)]
, and the secondary cooling is thereafter carried out in this state, i.e. in the sate
of keeping the position of the mold halves made in the above Step (5) [Step (6)].
The detail is explained in Example 2.
[0028] To carry out the primary cooling, it is essential only that, in the mold clamping
state, a surface portion of the molten thermoplastic resin is in a slightly solidified
state. The thermoplastic resin layer need not be completely solidified to the center
portion in its thickness direction.
[0029] An excessively short primary cooling time causes much deformation of products. On
the other hand, an excessively long primary cooling time causes much damage to the
skin material, and produces falling down of the raising and crush of the foamed layer.
The optimum primary cooling time, therefore, is chosen in consideration of a type
of the skin material to be used, a thickness of the product, a resin temperature during
molding, a mold clamping pressure and the like.
[0030] For example, in a case where a polypropylene resin having a resin temperature of
200°C is used at a mold temperature of 30°C and a multilayer molded article in which
a fabric skin material with raising is laminated on a 2.5 mm thick substrate is produced,
the primary cooling time is about 5 to 10 seconds.
[0031] The gap, A, created between the surface of the skin material and the part or the
whole of the mold half wherein the part or the whole of the mold half has a molding
surface contacting the skin material by slightly opening the part or the whole of
the mold corresponds to the length by which the part or the whole of the mold has
been opened. The purpose of creating the gap, A, is to relieve the skin material being
under compression by means of the mold clamping in the step (3) from compression and
to recover it sufficiently without any damages. When it is too small, in a case where
the skin material has a foamed layer, the foamed layer compressed can not recover
sufficiently, and in the case of the fabric skin material with raising, the raising
fallen down by compression can not recover sufficiently. As a result, the appearance
of the skin material after molding deteriorates. On the other hand, if the gap, A,
is too large, seriously insufficient cooling raises problems of deformation and the
like. Therefore, the gap, A, generally falls within a range of from (t - t
0) / 2 to (t - t
0), where t is the thickness of the unprocessed skin material before molding and t
0 is the thickness of the skin material being under compression by means of the mold
clamping, and preferably is the difference in thickness between the unprocessed skin
material before molding and the skin material being under compression by means of
the mold clamping.
[0032] The secondary cooling, which is carried out with the part or the whole of the mold
slightly opened and with the gap A retained, is continued until the molten thermoplastic
resin under compression is completely solidified as in the cases of the usual molding
methods.
[0033] The skin material compressed by the mold clamping in the step (3) is relieved by
the gap A made in the step (5). During the cooling step, in the case of the skin material
having the foamed layer, the foamed layer compressed recovers, and in the case of
the skin material with raising, the raising fallen down recovers.
[0034] Then, in a case where the moving element is the whole of the mold half as aforementioned,
after the molten thermoplastic resin has solidified, the mold halves are opened [Step
(7)] (Figure 5), and the multilayer molded article in which the surface of the substrate
is entirely laminated with the skin material is taken out. (Figure 6)
[0035] Alternatively, in a case where the moving element is the part of the mold half as
aforementioned, after the molten thermoplastic resin has solidified, the mold halves
are opened [Step (7)] and the multilayer molded article in which the surface of the
substrate is partly laminated with the skin material is taken out.
[0036] In such a process, a deformation problem of products may occur due to insufficient
cooling depending upon a size and a shape of the product, a thickness of the substrate
and a type of the skin material to be used, and so on. In such cases, the deformation
can be controlled by providing a rib (8) on the rear side of the substrate as shown
in Figure 7 in a case where the moving element is the whole of the mold half as aforementioned
or Figure 15 in a case where the moving element is the part of the mold half as aforementioned.
Example 2
[0037] Figure 8 schematically illustrates one example of the mold used in the present invention
by means of a cross section.
[0038] This mold is composed of a pair of a male mold half (1) and a female mold half (2).
In the molding surface of the mold half corresponding to the skin material-laminated
surface of a product (the molding surface (9) of the female mold half in the example
depicted in the Figure), a movable block (3) is provided to the part of the mold half
contacting the skin material.
[0039] The movable block (3) has a molding surface (10), whose size is approximately the
same as the area of the skin material to be laminated, and is embedded in the mold
half located on the skin material side of the product (the female mold half in this
example), and has a structure in which the movable block can slide forward and backward
in a mold opening/closing direction in the mold by means of a moving means such as
a hydraulic cylinder (4).
[0040] The movable block (3) usually can, in a state where it has advanced to a limit, make
a continuous molding surface by its molding surface (10) together with the molding
surface (9) of the female mold half (2) in which the movable block is embedded.
[0041] In the other mold half (the male mold half in this example) facing the mold half
in which the movable block (3) is embedded is provided a molten resin path (5) for
supplying the molten thermoplastic resin into a cavity.
[0042] One terminal of the molten resin path is connected with a resin-supplying opening
(11) which opens to a molding surface and the other terminal is connected with a plasticizing
apparatus (not shown) provided outside the mold.
[0043] The number of the resin-supplying opening (11) may be either one, or two or more
depending upon a shape and a size of the product, and the arrangement thereof are
also appropriately determined. However, at least one resin-supplying opening is preferably
provided at a position which faces the molding surface of the movable block (3).
[0044] In manufacture of the multilayer molded article using the female and the male mold
halves, first the mold halves are brought to an open state and a skin material (6)
is supplied to a predetermined position therebetween. [Step (1)] (Figure 9)
[0045] At this time, the skin material is supplied to a position facing the molding surface
(10) of the movable block (3). Figure 9 shows a state where the skin material is placed
over a position on the male mold half (1), the position facing the molding surface
of the movable block (3) provided on the molding surface. At this time, the skin material
may be either simply placed on the molding surface of the male mold half or fixed
with a fixing means for positioning the skin material.
[0046] Alternatively, according to a relation between the female and the male mold halves,
a type of the skin material and so on, the skin material may be either placed directly
on the molding surface (10) of the movable block (3) or fixed by temporarily fixing
the surface side of the skin material onto the molding surface of the movable block
using a double-faced tape or the like.
[0047] After the step (1), the molten thermoplastic resin (7) is supplied between the skin
material and the molding surface of the mold half having no movable block. [Step (2)]
(Figure 10)
[0048] A cavity clearance between the female and the male mold halves during this step can
concretely be determined in consideration of a type, a thickness and the like of the
skin material to be used, but it is essential that the mold halves are in the open
state.
[0049] In general, before supplying the molten thermoplastic resin, a position of the movable
block is adjusted so that the molding surface (11) of the movable block (3) and the
molding surface (9) of the female mold half in which the movable block is embedded
make a continuous molding surface together.
[0050] Subsequently, mold clamping is carried out by closing the female and the male mold
halves. [Step (3)] (Figure 11)
[0051] The mold clamping may be either commenced after completion of supplying the molten
thermoplastic resin or carried out in parallel with the step (2), in other words,
while supplying the molten thermoplastic resin.
[0052] In a case where the mold clamping is carried out after the completion of supplying
the molten thermoplastic resin, it is preferred that the mold clamping is commenced
immediately after the completion of supplying the molten thermoplastic resin.
[0053] The surface of the skin material (6) is laminated partly on the surface of the molten
thermoplastic resin layer, and comes in contact with the movable block (3) simultaneously
through the mold clamping.
[0054] After the mold clamping, the primary cooling is carried out while retaining the mold
clamping state [step (4)], and immediately after that, the movable block (3) contacting
the skin material is retracted into the mold half by means of the hydraulic cylinder
(4) to make a gap A between the surface of the skin material and the molding surface
(10) of the movable block (Step (5)]. As for a portion laminated with no skin material,
the secondary cooling is carried out in the state of keeping the posituion of the
mold halves made in the above Step (5), i.e. while retaining the previous mold clamping
state. [Step (6)] (Figure 12)
[0055] To carry out the primary cooling which is continued until retracting the movable
block into the mold half and making the gap between the surface of the skin material
and the molding surface (10) of the movable block, it is essential only that, in the
mold clamping state, a surface portion of the molten thermoplastic resin is in a slightly
solidified state. The thermoplastic resin need not be completely solidified to the
center portion in its thickness direction.
[0056] An excessively short primary cooling time causes much deformation of products. On
the other hand, an excessively long primary cooling time causes much damage to the
skin material, and produces falling down of the raising and crush of the foamed layer.
The optimum primary cooling time, therefore, is chosen in consideration of a type
of the skin material to be used, a thickness of the product, a resin temperature during
molding, a mold clamping pressure and the like.
[0057] For example, in a case where a polypropylene resin having a resin temperature of
200°C is used at a mold temperature of 30°C and a multilayer molded article in which
a fabric skin material with raising is laminated partly on a 2.5 mm thick substrate
is produced, the primary cooling time is about 5 to 10 seconds.
[0058] As for a retracting stroke of the movable block at a time when the movable block
(3) is retracted into the mold half to make the gap A between the surface of the skin
material and the molding surface (10) of the movable block, when it is too small,
in a case where the skin material has a foamed layer, the foamed layer compressed
can not recover sufficiently, and in the case of the fabric skin material with raising,
the raising fallen down by compression can not recover sufficiently. As a result,
the appearance of the skin material after molding deteriorates. On the other hand,
if the retracting stroke of the movable block is too large, insufficient cooling of
the skin material-laminated portion of the substrate due to a heat insulation effect
of the skin material raises problems of deformation and the like. Therefore, the retracting
stroke of the movable block generally falls within a range of from (t - t
0) / 2 to (t -t
0), where t is a thickness of the unprocessed skin material before molding and t is
the thickness of the skin material being under compression by means of the mold clamping.
[0059] As illustrated in Figure 5, the term "gap A" means a vertical clearance created by
the retraction of the movable block (3) and that is a gap between the surface of the
skin material and the molding surface (10) of the movable block (3).
[0060] The secondary cooling, which is carried out with the movable block (3) retracted
is continued until the molten thermoplastic resin under compression is completely
solidified as in the case of the usual molding methods.
[0061] After the molten thermoplastic resin has solidified, the mold halves are opened (Step
(7)] (Figure 13), and the multilayer molded article in which the surface of the substrate
is partly laminated with the skin material is taken out. (Figure 14)
[0062] In a case where, in such a process, a ratio of the area of the skin material-laminated
portion to the entire surface area of the substrate is large, there may arise a difference
in cooling degree of the substrate between the skin material-laminated portion and
the other portion, because the skin material-laminated portion is insufficiently cooled
due to a heat insulation effect of the skin material, and a deformation problem of
products may occur. In such cases, the deformation can be controlled by providing
a rib (8) on the rear side of the substrate as shown in Figure 15.
[0063] Although examples using the female and the male mold halves having a vertical mold
opening/closing direction are mentioned in the above description, a mold opening/closing
direction is not essential at all. The aforementioned processes, therefore, can be
carried out in the same fashion even if a female and a male mold halves having a horizontal
mold opening/closing direction are employed.
[0064] As skin materials applicable to the process of the present invention, fabric skin
materials are preferred. Especially, woven fabric and knitting fabric with raising
such as moquette and tricot, and nonwoven fabric such as a needle punched carpet are
preferably employed. - -
[0065] Such skin materials may be used either alone or as a composite skin material in which
two or more skin materials are stuck with each other with adhesive or the like. Particularly,
fabric skin materials backed with an urethane foamed sheet, a polyolefinbased resin
foamed sheet, i.e. a polypropylene foamed sheet, or the like are preferably used.
[0066] In addition, composite skin materials in which a sheet or a film of thermoplastic
resin or thermoplastic elastomer, paper, metallic foil, a net and the like are backed
with the aforementioned foamed sheets are also preferably employed.
[0067] As the polyolefin-based resin foamed sheets such as the polypropylene foamed sheet,
either those of a crosslinked type or of a non-crosslinked type may be used. An expansion
ratio thereof is not particularly limited.
[0068] In using such a skin material, it may be subjected to preforming according to a shape
of the skin material to be laminated.
[0069] As thermoplastic resins applicable to the process of the present invention, those
conventionally used in general injection molding, injection compression molding, extrusion
molding, stamping molding and the like can be employed with no particularly limitations.
For example, conventional thermoplastic resins such as polyolefin resin, i.e. polyethylene
and polypropylene, polystyrene, acrylic resin, an acrylonitrile-styrene-butadiene
block copolymer, polyamide, i.e. nylon, polyvinyl chloride, polycarbonate and a styrene-butadiene
block copolymer, thermoplastic elastomer such as EPM and EPDM, mixtures thereof, and
polymer alloys using these materials. These may be either expandable or non-expandable.
[0070] The term "thermoplastic resin" used in the present invention includes all of the
above exemplified materials.
[0071] The thermoplastic resins may contain reinforcing fibers such as glass fiber, fillers
including various inorganic and organic fillers such as talc and wollastonite, and
the like. Of course a variety of conventionally used pigments, lubricants, antistatic
agents, antioxidants, ultraviolet absorbers and the like may be optionally incorporated
in the thermoplastic resin.
[0072] According to the process of the present invention, the advantage of the injection
press molding method that a surface of a thermoplastic resin substrate can be laminated
partly or entirely with a skin material in parallel with forming the substrate is
utilized, and even in a case where a fabric skin material with raising or a skin material
backed with a foamed layer is used, deterioration in an appearance and in a cushion
property caused by falling down of the raising and crush of the foamed layer never
occurs. Furthermore, a multilayer molded article laminated partly or entirely with
a skin material with a good appearance having less distortion can be easily produced.
EXPLANATIONS OF LETTERS OR NUMERALS
[0073]
- 1:
- male mold half
- 2:
- female mold half
- 3:
- movable block
- 4:
- hydraulic cylinder
- 5:
- molten resin path
- 6:
- skin material
- 7:
- molten thermoplastic resin
- 8:
- rib
- 9:
- molding surface of female mold half
- 10:
- molding surface of movable block
- 11:
- resin-supplying opening
- A:
- gap